I will share with you the formula for calculating the wall thickness of stainless steel heat exchange tubes

By: mxgy,

Time: 2024,6,24

The relationship between the heat flux density, thermal conductivity coefficient, surface temperature, and thickness of stainless steel heat exchange tubes is expressed by heat conduction theory as q=k × Δ T ÷ δ
Here is an explanation of the letters in the formula:
Q represents the heat flux density per unit area per unit time
K represents the thermal conductivity coefficient
Δ T represents the temperature difference between the inner and outer sides of the heat exchange tube
Delta represents the thickness of stainless steel heat exchange tubes

Look! Heat exchange tubes are made of more than just stainless steel!
What are the common sizes of stainless steel heat exchange tubes?

I will share with you the formula for calculating the wall thickness of stainless steel heat exchange tubes

By: mxgy,

Time: 2024,6,24

The relationship between the heat flux density, thermal conductivity coefficient, surface temperature, and thickness of stainless steel heat exchange tubes is expressed by heat conduction theory as q=k × Δ T ÷ δ
Here is an explanation of the letters in the formula:
Q represents the heat flux density per unit area per unit time
K represents the thermal conductivity coefficient
Δ T represents the temperature difference between the inner and outer sides of the heat exchange tube
Delta represents the thickness of stainless steel heat exchange tubes

Look! Heat exchange tubes are made of more than just stainless steel!
What are the common sizes of stainless steel heat exchange tubes?